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Technical Paper

Modeling of Radiative Heat Transfer during a PWR Severe Accident

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Pages 194-214 | Published online: 10 Apr 2017

References

  • V. GUILLARD, F. FICHOT, P. BOUDIER, M. PARENT, and R. ROVER, “ICARE/CATHARE Coupling: 3D Thermal-Hydraulics of LWR Severe Accidents,” Proc. 9th Int. Conf. Nuclear Engineering (ICONE-9), Nice, France, April 8-12, 2001.
  • R. SIEGEL and J. R. HOWELL, Thermal Radiation Heat Transfer, McGraw-Hill Book Company, New York (1972).
  • H. C. HOTTEL and A. F. SAROFIM, Radiative Transfer, McGraw-Hill Book Company, New York (1967).
  • M. S. SOHAL, “A Radiation Heat Transfer Model for the SCDAP Code,” Nucl. Technol., 75, 196 (1986).
  • F FICHOT,P. CHATELARD, M. BARRACHIN, V. GUILLARD, S. MELIS, and M. ZABIEGO, “ICARE/CATHARE A Computer Code for Analysis of Severe Accidents in LWRs— ICARE2 V3mod1—Description of the Physical Models,” Note Technique SEMAR 00/03, IPSN/DRS/SEMAR (2001).
  • B. P. SINGH and M. KAVIANY, “Independent Theory Versus Direct Simulation of Radiative Heat Transfer in Packed Beds,” Int. J. Heat Mass Transfer, 34, 2869 (1991).
  • M. TANCREZ and J. TAINE, “Direct Identification of Absorption and Scattering Coefficients and Phase Function of a Porous Medium by a Monte Carlo Technique,” Int. J. Heat Mass Transfer, 47, 373 (2004).
  • S. WHITAKER, “Radiant Energy Transport in Porous Media,” Ind. Eng. Chem. Fund., 19, 210 (1980).
  • D. VORTMEYER, “Radiation in Packed Solids,” Proc. 6th Int. Heat Transfer Conf., Toronto, Canada, 1978.
  • C. L. TIEN and B. L. DROLEN, “Thermal Radiation in Particulate Media with Dependent and Independent Scattering,” Ann. Rev. Numer. FluidMech. Heat Transfer, 1, 1 (1988).
  • W. STRIEDER, “Radiation Heat Transport in Disordered Media,” Adv. Water Res., 20, 2-3, 171 (1997).
  • R. VISKANTA, S. CHELLAILAH, and M. M. MOALLEMI, “Thermal Analysis of Core Barrel Heating and Coolant Recirculation During Core Uncovery in PWR Accidents,” NP5586, Electric Power Research Institute (Nov. 1987).
  • R. C. SCHMIDT and R. D. GASSER, “Models and Correlations of the DEBRIS Late-Phase Melt Progression Model,” SAND93-3922, Sandia National Laboratories (1997).
  • P. RUBIOLO, “Modelisation du transfert thermique dans un milieux poreux: application aux reacteurs nucleaires en situation accidentelle,” PhD Thesis, Universite d’Aix-Marseille I (2000).
  • P. RUBIOLO and J. M. GATT, “Modeling of the Radiative Contribution to Heat Transfer in Porous Media Composed of Spheres or Cylinders,” Int. J. Therm. Sci., 41, 401 (2002).
  • J. L. CONSALVI, B. PORTERIE, and J. C. LORAUD, “A Formal Averaging Procedure for Radiation Heat Transfer in Particulate Media,” Int. J. Heat Mass Transfer, 45, 2755 (2002).
  • V. S. TRAVKIN and I. CATTON, “Radiation Heat Transport in Porous Media,” Proc. ASME Heat Transfer Division, Vol. 3, p. 31, American Society of Mechanical Engineers (1999).
  • R. L. COX, “Radiative Heat Transfer in Arrays of Parallel Cylinders,” PhD Thesis, University of Tennessee, Knoxville (1976).
  • J. T. HITCHCOCK and J. E. KELLY, “The DC1 and DC2 Debris Coolability and Melt Dynamic Experiment,” NUREG/CR-4060 and SAND84-1367, Sandia National Laboratories (1985).
  • F. FICHOT, V. KOBZAR, YU. ZVONAREV, and P BOUSQUET-MELOU, “The Use of RASPLAVResults in IPSN Severe Accident Research Program,” Proc. RASPLAV Seminar, Munich, Germany, 2000, Organization for Economic Cooperation and Development/Nuclear Energy Agency (2000).
  • R. D. GASSER, R. O. GAUNTT, S. C. BOURCIER, R. C. SCHMIDT, L. L. HUMPHRIES, and K. O. REIL, “Late-Phase Melt Progression Experiment: MP-2—Results and Analysis,” NUREG/CR-6167, Sandia National Laboratories (1997).
  • F. SERRE, F. ARREGHINI, C. KTORZA, M. C. ANSELMET, and F. JEURY, “Phebus FPT4: Test Conditions and First Results,” Proc. Workshop Severe Accident Research, Japan (SARJ-99), Tokyo, Japan, November, 1999, p. 210,K. HASHIMOTO, Ed., Japan Atomic Energy Research Institute (1999).
  • M. Q. BREWSTER, Thermal Radiative Transfer and Properties, Wiley-Interscience, New York (1992).
  • M. KAVIANY, Principles of Heat Transfer in Porous Media, 2nd ed., Springer-Verlag (1995).
  • G. D. MAZZA, C. A. BERTO, and G. F. BARRETO, “Evaluation of Radiative Heat Transfer Properties in Dense Particulate Media,” Powder Technol., 67, 137 (1991).
  • P. RUBIOLO, “Determination of the Core Equivalent Conductivity During a Severe Accident in a PWR,” Proc. 34th National Heat Transfer Conf. (NHTC’00), Pittsburgh, Pennsylvania, August 2000.
  • M. SAHRAOUI and M. KAVIANY, “Slip and No-Slip Temperature Boundary Conditions at Interface of Porous,” Plain Media: Conduction. Int. J. Heat Mass Transfer, 36, 4, 1019 (1993).
  • A. V. LUIKOV, A. G. SHASHKOV, L. L. VASILIEV, and YU. E. FRAIMAN, “Thermal Conductivity of Porous Systems,” Int. J. Heat Mass Transfer, 11 (1968).
  • P. ZEHNER and E. U. SCHLUNDER, “Thermal Conductivity of Granular Materials at Moderate Temperatures,” Chem. Ing. Tech, 42,14, 933 (1970).
  • C. T. HSU, P. CHENG, and K. W. WONG, “Modified Zehner-Schlunder Models for Stagnant Thermal Conductivity of Porous Media,” Int. J. Heat Mass Transfer, 37, 2571 (1994).
  • D. KUNII and J. M. SMITH, “Heat Transfer Characteristics of Porous Rocks,” AIChE J., 6, 63 (1960).
  • G. S. BEVERIDGE and D. P. HAUGHEY, “Axial Heat Transfer in Packed Beds,” Int. J. HeatMass Transfer, 14, 1093 (1971).
  • W. SCHOTTE, “Thermal Conductivity of Packed Beds,” AIChEJ., 6, 63 (1960).
  • S. IMURA and E. TAKEGOSHI, “Effect of Gas Pressure on the Effective Thermal Conductivity of Packed Beds,” Heat Transfer Japanese Res., 3, 4 (1974).
  • Y. S. YAGI and D. KUNII, “Studies on Effective Thermal Conductivities in Packed Beds,” AIChE J., 3, 373 (1957).
  • S. EDERLI, “Validation of the ICARE2 V3mod1.0 Late Phase Models Against ACRR MP-1 and DC-1 Experiments,” SEMAR 01/50, Institut de Radioprotection et de Sürete Nucleaire (2001).
  • M. LE ROY and M. ZABIEGO, “Validation of the ICARE2 V3mod0 SoftwareAgainst the ACRR MP-2 Experiment,” Technical Report 01-27, IPSN/DRS/SEMAR (2001).
  • J. C. CRESTIA and G. REPETTO, “PHEBUS FPT4: Status of Post-Test Analysis of the Debris Bed Behaviour with ICARE2 Code,” SEMAR 01/02, IPSN/DRS/SEMAR (2002).
  • C. L. TIEN, R. A. SANCHEZ, D. A. MANDELL, and C. T. McDANIEL, “Surface Radiative Exchange in Rod Bundles,” Trans. ASME J. Heat Transfer, 101, 378 (1979).
  • B. BERTHET, J. BONNIN, S. GAILLOT, N. HANNIET, F. JEURY, CH. MARQUIE, and Y. GARNIER, “FPT1 Quick Look Report: DOCUMENT PHEBUS PF IP/96/310,” IPSN/DRS/SEA/LERES (Sep. 1997).

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